On acoustic and electric Faraday cages
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[1] R. Paknys. The near field of a wire grid model , 1991 .
[2] R. García-Pelayo,et al. Multiple Scattering , 2001 .
[3] C. M. Linton,et al. The Green's Function for the Two-Dimensional Helmholtz Equation in Periodic Domains , 1998 .
[4] G. Wendt,et al. Statische Felder und stationäre Ströme , 1958 .
[5] Ernst Weber,et al. Electromagnetic fields , 1950 .
[6] D. V. Evans,et al. Near-trapping of waves by circular arrays of vertical cylinders , 1997 .
[7] E. Heller,et al. Quantum corral resonance widths: lossy scattering as acoustics. , 2010, Nano letters.
[8] A. Kishk,et al. Modeling of cylindrical objects by circular dielectric and conducting cylinders , 1992 .
[9] Eddie Wadbro,et al. Laplace's equation and the Dirichlet-Neumann map: a new mode for Mikhlin's method , 2005 .
[10] Horace Lamb,et al. On the Reflection and Transmission of Electric Waves by a Metallic Grating , 2010 .
[11] A. Ludwig. Wire grid modeling of surfaces , 1987 .
[12] L. Wilson. The shielding of a plane wave by a cylindrical array of infinitely long thin wires , 1974 .
[13] P. Morse,et al. Methods of theoretical physics , 1955 .
[14] V. Hutson. Integral Equations , 1967, Nature.
[15] R. Gans. Das Verhalten Hertzscher Gitter , 1920 .
[16] E. J. Heller,et al. Matter-wave scattering and guiding by atomic arrays , 2007 .
[17] C. M. Linton,et al. Rapidly convergent representations for Green' functions for Laplace' equation , 1999, Proceedings of the Royal Society of London. Series A: Mathematical, Physical and Engineering Sciences.
[18] Miguel Moscoso,et al. Imaging Strong Localized Scatterers with Sparsity Promoting Optimization , 2013, SIAM J. Imaging Sci..
[19] V. Twersky,et al. On scattering of waves by the infinite grating of circular cylinders , 1962 .
[20] J. Maxwell. A Treatise on Electricity and Magnetism , 1873, Nature.
[21] G. Fikioris,et al. Near fields of resonant circular arrays of cylindrical dipoles , 2008, IEEE Antennas and Propagation Magazine.
[22] W. V. Ignatowsky. Zur Theorie der Gitter , 1914 .
[23] Avram Sidi,et al. Euler–Maclaurin expansions for integrals with endpoint singularities: a new perspective , 2004, Numerische Mathematik.
[24] T. Larsen,et al. A Survey of the Theory of Wire Grids , 1962 .
[25] Paul A. Martin,et al. Semi-Infinite Arrays of Isotropic Point Scatterers. A Unified Approach , 2004, SIAM J. Appl. Math..
[26] J. H. Richmond,et al. Scattering by an Arbitrary Array of Parallel Wires , 1965 .
[27] R. Vescovo. Electromagnetic scattering from cylindrical arrays of infinitely long thin wires , 1995 .
[28] Chris M. Linton,et al. Lattice Sums for the Helmholtz Equation , 2010, SIAM Rev..
[29] I. S. Gradshteyn,et al. Table of Integrals, Series, and Products , 1976 .
[30] Lara Pajewski,et al. Cylindrical-wave approach for the electromagnetic scattering problem by buried two-dimensional objects , 2009 .
[31] Lloyd N. Trefethen,et al. The Exponentially Convergent Trapezoidal Rule , 2014, SIAM Rev..
[32] R. F. Millar. Plane wave spectra in grating theory. II. Scattering by an infinite grating of identical cylinders , 1964 .
[33] Kerstin Vogler,et al. Table Of Integrals Series And Products , 2016 .
[34] George Fikioris,et al. On two types of convergence in the method of auxiliary sources , 2006 .
[35] L. Foldy,et al. The Multiple Scattering of Waves. I. General Theory of Isotropic Scattering by Randomly Distributed Scatterers , 1945 .